Sodium Aurothiomalate Induces Ferroptosis by Targeting GPX4 via Gold-Dependent Thiomalate Covalent Modification
Hugo, M.; Gross, L. Z. F.; Messias, A.; Alcober-Boquet, L.; Vignane, T.; Ghosh, B.; Aroua, N.; Denson, L.; Delgado-Martin, S.; Kaushal, K.; Yildiz, U.; Müller, S.; Martinez-Ruiz, A.; Estrin, D. A.; Augustin, H. G.; Rodriguez, R.; Biondi, R. M.; Trumpp, A.; Jayavelu, A. K.; Cheng, Q.; Etzkorn, M.; Berndt, C.; Arner, E. S. J.; Filipovic, M. R.; Di Lella, S.; Pastor-Flores, D.; Alborzinia, H.
Show abstract
Ferroptosis, an iron-dependent form of oxidative cell death, is predominantly regulated by glutathione peroxidase 4 (GPX4), making it a promising target for cancer therapy. However, the majority of GPX4 inhibitors, most of which contain a chloroacetamide moiety such as RSL3, are limited by poor pharmacokinetic properties and off-target effects, hindering their preclinical translation. Utilizing a range of interdisciplinary methodologies, we show that sodium aurothiomalate (ATM), a drug approved by many agencies, induces ferroptosis by covalently targeting GPX4 via formation of a selenenylsulfide bond. In preclinical models of neuroblastoma and acute myeloid leukemia (AML), ATM combined with ferric ammonium citrate (FAC) yields a synergistic effect, resulting in a significant reduction in tumor growth. Mechanistically, ATM disrupts GPX4 activity by covalently binding thiomalate to the active site selenocysteine, while modification of specific cysteine residues leads to destabilization of the protein and impaired binding to phospholipids. We propose that these covalent modifications are achieved through a unique reaction mechanism, in which the gold component of ATM acts as a thiol-masking carrier and is only transiently present, being subsequently displaced and allowing the reaction of the thiomalate moiety with the target selenocysteine or cysteine. Our data lay the foundation for development of novel, drug-like thiol-based GPX4 inhibitors.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ligand supplementation restores the cancer therapy efficacy of an antirheumatic drug auranofin from serum inactivation 97%
- Cycling Molecular Assemblies for Selective Cancer Cell Golgi Disruption 95%
- Synthetic chaperone based on Hsp90-Tau interaction inhibits pathological Tau aggregation and rescues physiological Tau-Microtubule interaction 95%
Similar papers in this journal
Similar papers in this journal
- Enhancing biocompatibility of rhodamine fluorescent probes by a neighbouring group effect 94%
- Discovery of reactive peptide inhibitors of human papillomavirus oncoprotein E6 93%
- A Cell-Permeable Fluorescent Probe Reveals Temporally Diverse PI(4,5)P2 Dynamics Evoked by Distinct GPCR Agonists in Neurons 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.